基于神经网络的空间矢量脉宽调制逆变感应电机驱动系统的实现

S. Kashif, M. Saqib, S. Zia, A. Kaleem
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引用次数: 8

摘要

提出了一种基于三层前馈反传人工神经网络的空间矢量脉宽调制(SPWM)控制电压源逆变器。在Matlab Simulink中进行仿真,获得输入输出样本;用于网络的广泛训练。通过计算权重和偏置,利用PIC单片机实现了神经网络。所设计的人工神经网络模型和速度控制器以命令电压和参考速度为输入,产生脉宽调制波供三相逆变电桥使用。所设计的系统控制频率和定子电压,保持V/f比恒定。结果,对设计的人工神经网络结构进行了谐波分析,并与其他方法进行了成本比较。基于人工神经网络的低成本和基于微控制器的实现,以及适应不同情况的在线训练的灵活性是该方案的主要优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of neural network based Space Vector Pulse Width Modulation inverter- induction motor drive system
This paper presents a voltage source inverter which is controlled with Space Vector Pulse Width Modulation (SPWM) designed using three layers feed forward back propagation based artificial neural network (ANN). The input output samples were obtained using simulations in Matlab Simulink; which were used for extensive training of network. With calculated weights and biases, the neural network was implemented using PIC microcontroller. The designed ANN model and speed controller receives command voltage and reference speed as the inputs and generates pulse width modulated waves for three phase inverter-bridge. The designed system controls the frequency and stator voltage keeping V/f ratio constant. Results, harmonic analysis with designed ANN structure and cost comparison with other techniques is presented. Low cost due to ANN and micro-controller based implementation, flexibility of on-line training for incorporating different conditions are the main advantages of presented scheme.
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